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- W2104940365 abstract "Highly ordered thin films were made by a dip-coating technique. Sodium dodecyl sulfate (SDS)-templated sol−gel films possess lamellar structure, and cetyltrimethylammonium bromide-templated sol−gel films exhibit a hexagonal structure. In this work, mesostructured films made with these surfactants were doped with polyphenylvinylene (PPV). X-ray diffraction patterns indicate that the films have the known structure. The photoconductivity technique was used to determine the charge-transport mechanism on these films. The parameters for the photovoltaic effect (φl0) and photoconductivity (φμτ) were determined from the current density versus the applied-electrical-field results. Lamellar films have bigger values of these parameters than the corresponding ones from the hexagonal films, and the conductivity is better in the former. Charge-transport parameters are quite high in the PPV-doped samples compared with the reported values in films doped with Disperse Red 1 and carbazole (SiK). KNbO3:Fe3+ photorefractive crystals are less photoconductive and photovoltaic than the PPV films, too. There is a critical polymer concentration in the SDS samples." @default.
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- W2104940365 date "2003-02-11" @default.
- W2104940365 modified "2023-09-27" @default.
- W2104940365 title "Structure and Polyphenylvinylene Concentration Effect on the Photoconductivity Response from Mesostructured Silica Films" @default.
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- W2104940365 doi "https://doi.org/10.1021/jp0274132" @default.
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